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Alcedo, J., Ayzenzon, M., Von Ohlen, T., Noll, M. and Hooper, J. E (1996). The Drosophila smoothened gene encodes a seven-pass membrane protein, a putative receptor for the hedgehog signal. Cell 86, 221-232.[Medline]

Alexandre, C., Jacinto, A. and Ingham, P. W (1996). Transcriptional activation of hedgehog target genes in Drosophila is mediated directly by the cubitus interruptus protein, a member of the GLI family of zinc finger DNA-binding proteins. Genes Dev 10, 2003-2013.[Abstract/Free Full Text]

Alexandre, E., Graba, Y., Fasano, L., Gallet, A., Perrin, L., De Zulueta, P., Pradel, J., Kerridge, S. and Jacq, B (1996). The Drosophila teashirt homeotic protein is a DNA-binding protein and modulo, a HOM-C regulated modifier of variegation, is a likely candidate for being a direct target gene. Mech Dev 59, 191-204.[Medline]

Alexandre, C., Lecourtois, M. and Vincent, J (1999). Wingless and Hedgehog pattern Drosophila denticle belts by regulating the production of short-range signals. Development 126, 5689-5698.[Abstract]

Aza-Blanc, P. and Kornberg, T. B (1999). Ci: a complex transducer of the hedgehog signal. Trends Genet 15, 458-462.[Medline]

Aza-Blanc, P., Ramirez-Weber, F. A., Laget, M. P., Schwartz, C. and Kornberg, T. B (1997). Proteolysis that is inhibited by hedgehog targets Cubitus interruptus protein to the nucleus and converts it to a repressor. Cell 89, 1043-1053.[Medline]

Bejsovec, A. and Martinez Arias, A (1991). Roles of wingless in patterning the larval epidermis of Drosophila. Development 113, 471-485.[Abstract]

Bienz, M (1994). Homeotic genes and positional signalling in the Drosophila viscera. Trends Genet 10, 22-26.[Medline]

Brand, A. and Perrimon, N (1993). Targeted gene expression as a means of altering cell fates and generating dominant phenotype. Development 118, 401-415.[Abstract]

Chen, C. H., von Kessler, D. P., Park, W., Wang, B., Ma, Y. and Beachy, P. A (1999). Nuclear trafficking of Cubitus interruptus in the transcriptional regulation of Hedgehog target gene expression. Cell 98, 305-316.[Medline]

Chen, Y. and Struhl, G (1996). Dual roles for patched in sequestering and transducing Hedgehog. Cell 87, 553-563.[Medline]

de Zulueta, P., Alexandre, E., Jacq, B. and Kerridge, S (1994). Homeotic complex and teashirt genes co-operate to establish trunk segmental identities in Drosophila. Development 120, 2287-2296.[Abstract]

Dougan, S. T. and DiNardo, S (1992). wingless generates cell type diversity among engrailed expressing cells. Nature 360, 347-350.[Medline]

Fasano, L., Roder, L., Core, N., Alexandre, E., Vola, C., Jacq, B. and Kerridge, S (1991). The gene teashirt is required for the development ofDrosophila embryonic trunk segments and encodes a protein with widely spaced zinc finger dmotifs. Cell 64, 63-79.[Medline]

Francois, V., Solloway, M., O'Neill, J. W., Emery, J. and Bier, E (1994). Dorsal-ventral patterning of the Drosophila embryo depends on a putative negative growth factor encoded by the short gastrulation gene. Genes Dev 8, 2602-2616.[Abstract/Free Full Text]

Gallet, A., Angelats, C., Erkner, A., Charroux, B., Fasano, L. and Kerridge, S (1999). The C-terminal domain of Armadillo binds to hypophosphorylated Teashirt to modulate Wingless signalling in Drosophila. EMBO J 18, 2208-2217.[Medline]

Gallet, A., Erkner, A., Charroux, B., Fasano, L. and Kerridge, S (1998). Trunk-specific modulation of wingless signalling in drosophila by teashirt binding to armadillo. Curr. Biol 8, 893-902.[Medline]

Gritzan, U., Hatini, V. and DiNardo, S (1999). Mutual antagonism between signals secreted by adjacent wingless and engrailed cells leads to specification of complementary regions of the drosophila parasegment. Development 126, 4107-4115.[Abstract]

Hammerschmidt, M., Brook, A. and McMahon, A. P (1997). The world according to hedgehog. Trends Genet 13, 14-21.[Medline]

Hepker, J., Blackman, R. K. and Holmgren, R (1999). Cubitus interruptus is necessary but not sufficient for direct activation of a wing-specific decapentaplegic enhancer. Development 126, 3669-3677.[Abstract]

Hepker, J., Wang, Q. T., Motzny, C. K., Holmgren, R. and Orenic, T. V (1997). Drosophila cubitus interruptus forms a negative feedback loop with patched and regulates expression of Hedgehog target genes. Development 124, 549-558.[Abstract]

Hidalgo, A. and Ingham, P (1990). Cell patterning in the Drosophila segment: spatial regulation of the segment polarity gene patched. Development 110, 291-301.[Abstract]

Hooper, J. E (1994). Distinct pathways for autocrine and paracrine Wingless signalling in Drosophila embryos. Nature 372, 461-464.[Medline]

Hooper, J. E. and Scott, A. M. P (1989). The drosophila patched gene encodes a putative membrane protein required for segmental patterning. Cell 59, 751-765.[Medline]

Ingham, P. W (1993). Localized hedgehog activity controls spatial limits of wingless transcription in the Drosophila embryo. Nature 366, 560-562.[Medline]

Ingham, P. W. and Hidalgo, A (1993). Regulation of wingless transcription in the Drosophila embryo. Development 117, 283-291.[Abstract/Free Full Text]

Ingham, P. W., Taylor, A. M. and Nakano, Y (1991). Role of the Drosophila patched gene in positional signalling. Nature 353, 184-187.[Medline]

Krishnan, V., Elberg, G., Tsai, M. J. and Tsai, S. Y (1997). Identification of a novel sonic hedgehog response element in the chicken ovalbumin upstream promoter-transcription factor II promoter. Mol. Endocrinol 11, 1458-1466.[Abstract/Free Full Text]

Lawrence, P. A., Sanson, B. and Vincent, J. P (1996). Compartments, wingless and engrailed: patterning the ventral epidermis of Drosophila embryos. Development 122, 4095-4103.[Abstract]

Lee, J. J., von Kessler, D. P., Parks, S. and Beachy, P. A (1992). Secretion and localized transcription suggest a role in positional signaling for products of the segmentation gene hedgehog. Cell 71, 33-50.[Medline]

Lessing, D. and Nusse, R (1998). Expression of wingless in the Drosophila embryo: a conserved cis-acting element lacking conserved Ci-binding sites is required for patched-mediated repression. Development 125, 1469-1476.[Abstract]

Lewis, K. E., Drossopoulou, G., Paton, I. R., Morrice, D. R., Robertson, K. E., Burt, D. W., Ingham, P. W. and Tickle, C (1999). Expression of ptc and gli genes in talpid3 suggests bifurcation in Shh pathway. Development 126, 2397-2407.[Abstract]

Li, X. and Noll, M (1993). Role of the gooseberry gene in Drosophila embryos: maintenance of wingless expression by a wingless\320gooseberry autoregulatory loop. EMBO J 12, 4499-4509.[Medline]

Lohs-Schardin, M., Cremer, C. and Nusslein-Volhard, C (1979). A fate map for the larval epidermis of Drosophila melanogaster: localized cuticle defects following irradiation of the blastoderm with an ultraviolet laser microbeam. Dev. Biol 73, 239-255.[Medline]

Mann, R. S. and Affolter, M (1998). Hox proteins meet more partners. Curr. Opin. Genet. Dev 8, 423-429.[Medline]

Martinez-Arias, A., Baker, N. E. and Ingham, P. W (1988). Role of segment polarity genes in the definition and maintenance of cell states in the drosophila embryo. Development 103, 157-170.[Abstract]

Methot, N. and Basler, K (1999). Hedgehog controls limb development byregulating the activities of distinct transcriptional activator and repressor forms of Cubitus interruptus. Cell 96, 819-831.[Medline]

Mohler, J (1988). Requirements for hedgehog a segmental polarity gene in patterning larval and adult cuticle of drosophila. Genetics 120, 1061-1072.[Abstract/Free Full Text]

Mohler, J. and Vani, K (1992). Molecular organization and embryonic expression of the hedgehog gene involved in cell-cell communication in segmental patterning of Drosophila. Development 115, 957-971.[Abstract]

Nakano, Y., Guerrero, I., Hidalgo, A., Taylor, A., Whittle, J. R. S. and Ingham, P. W (1989). A protein with several possible membrane-spanning domains encoded by the Drosophila segment polarity gene patched. Nature 341, 508-513.[Medline]

Noordermeer, J., Johnston, P., Rijsewijk, F., Nusse, R. and Lawrence, P. A (1992). The consequences of ubiquitous expression of the wingless gene in the Drosophila embryo. Development 116, 711-719.[Abstract]

Nusslein-Volhard, C. and Wieschaus, E (1980). Mutations affecting segment number and polarity in Drosophila. Nature 287, 795-801.[Medline]

O'Keefe, L., Dougan, S. T., Gabay, L., Raz, E., Shilo, B. Z. and DiNardo, S (1997). Spitz and Wingless, emanating from distinct borders, cooperate to establish cell fate across the Engrailed domain in the Drosophila epidermis. Development 124, 4837-4845.[Abstract]

Ohlmeyer, J. T. and Kalderon, D (1998). Hedgehog stimulates maturation of Cubitus interruptus into a labile transcriptional activator. Nature 396, 749-753.[Medline]

Ramirez-Weber F.A., Casso D.J., Aza-Blanc P., Tabata T., Kornberg T.B (2000). Hedgehog signal transduction in the posterior compartment of the Drosophila wing imaginal disc. Mol. Cell 6, 479-85.

Riese, J., Yu, X., Munnerlyn, A., Eresh, S., Hsu, S. C., Grosschedl, R. and Bienz, M (1997). LEF-1, a nuclear factor coordinating signaling inputs from wingless and decapentaplegic. Cell 88, 777-787.[Medline]

Robbins, D. J., Nybakken, K. E., Kobayashi, R., Sisson, J. C., Bishop, J. M. and Therond, P. P (1997). Hedgehog elicits signal transduction by means of a large complex containing the kinesin-related protein costal2. Cell 90, 225-234.[Medline]

R\232der, L., Vola, C. and Kerridge, S (1992). The role of the teashirt gene in trunk segmental identity in Drosophila. Development 115, 1017-1033.[Abstract]

Sampedro, J. and Guerrero, I (1991). Unrestricted expression of the Drosophila gene patched allows a normal segment polarity. Nature 353, 187-190.[Medline]

Sanson, B., Alexandre, C., Fascetti, N. and Vincent, J. P (1999). Engrailed and hedgehog make the range of Wingless asymmetric in Drosophila embryos. Cell 98, 207-216.[Medline]

Sisson, J. C., Ho, K. S., Suyama, K. and Scott, M. P (1997). Costal2, a novel kinesin-related protein in the Hedgehog signaling pathway. Cell 90, 235-245.[Medline]

Slusarski, D. C., Motzny, C. K. and Holmgren, R (1995). Mutations that alter the timing and pattern of cubitus interruptus gene expression in Drosophila melanogaster. Genetics 139, 229-240.[Abstract]

Suzuki, T. and Saigo, K (2000). Transcriptional regulation of atonal required for Drosophila larval eye development by concerted action of Eyes absent, Sine oculis and Hedgehog signaling independent of Fused kinase and Cubitus interruptus. Development 127, 1531-1540.[Abstract]

Szuts, D., Freeman, M. and Bienz, M (1997). Antagonism between EGFR and Wingless signalling in the larval cuticle of Drosophila. Development 124, 3209-3219.[Abstract]

Tabata, T., Eaton, S. and Kornberg, T. B (1992). The Drosophila hedgehog gene is expressed specifically in posterior compartment cells and is a target of engrailed regulation. Genes Dev 6, 2635-2645.[Abstract/Free Full Text]

Tabata, T. and Kornberg, T. B (1994). Hedgehog is a signaling protein with a key role in patterning Drosophila imaginal discs. Cell 76, 89-102.[Medline]

Therond, P., Busson, D., Guillemet, E., Limbourg-Bouchon, B., Preat, T., Terracol, R., Tricoire, H. and Lamour-Isnard, C (1993). Molecular organisation and expression pattern of the segment polarity gene fused of Drosophila melanogaster. Mech. Dev 44, 65-80.[Medline]

Therond, P. P., Limbourg Bouchon, B., Gallet, A., Dussilol, F., Pietri, T., van den Heuvel, M. and Tricoire, H (1999). Differential requirements of the fused kinase for hedgehog signalling in the Drosophila embryo. Development 126, 4039-4051.[Abstract]

van den Heuvel, M. and Ingham, P. W (1996). smoothened encodes a receptor-like serpentine protein required for hedgehog signalling. Nature 382, 547-551.[Medline]

von Mering, C. and Basler, K (1999). Distinct and regulated activities of human Gli proteins in Drosophila. Curr. Biol 9, 1319-1322.[Medline]

Von Ohlen, T., Lessing, D., Nusse, R. and Hooper, J. E (1997). Hedgehog signaling regulates transcription through cubitus interruptus, a sequence-specific DNA binding protein. Proc. Natl. Acad. Sci. USA 94, 2404-2409.[Abstract/Free Full Text]

Waltzer, L. and Bienz, M (1998). Drosophila CBP represses the transcription factor TCF to antagonize Wingless signalling. Nature 395, 521-525.[Medline]

Wang, Q. T. and Holmgren, R. A (1999). The subcellular localization and activity of Drosophila cubitus interruptus are regulated at multiple levels. Development 126, 5097-5106.[Abstract]

Wiellette, E. L. and McGinnis, W (1999). Hox genes differentially regulate Serrate to generate segment-specific structures. Development 126, 1985-1995.[Abstract]

Wodarz, A. and Nusse, R (1998). Mechanisms of Wnt signaling in development. Annu. Rev. Cell Dev. Biol 14, 59-88.[Medline]

Yoffe, K. B., Manoukian, A. S., Wilder, E. L., Brand, A. H. and Perrimon, N (1995). Evidence for engrailed-independent wingless autoregulation in Drosophila. Dev. Biol 170, 636-650.[Medline]


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